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Lithium Orthosilicate

Lithium Orthosilicate

Product Details:

  • Storage Room Temperature
  • Classification Organic Chemicals
  • Grade Industrial Grade
  • Type Lithium Orthosilicate
  • Application Industrial
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Lithium Orthosilicate Price And Quantity

Lithium Orthosilicate Product Specifications

  • Room Temperature
  • Lithium Orthosilicate
  • Industrial
  • Organic Chemicals
  • Industrial Grade

Lithium Orthosilicate Trade Information

  • 50 Per Month
  • 2-12 Week

Product Description

Axiom Chemicals Pvt Ltd is affianced in manufacturing exporting and supplying high quality Lithium Orthosilicate to our valued clients. The provided chemical compound is tested on various parameters to ensure its purity and is extensively used as used as  tritium breeder ceramic in nuclear reactors. This orthosilicate is processed using the superior quality chemical compound at our production unit under suitable environment. As per the varied demands of clients this product can be availed from us in various packaging options at reasonable prices

Lithium Orthosilicate Properties:


1. CAS Number: 13453-84-4

2. Chemical formula: Li4O4Si

3. Molar mass: 119.84 g/mol-1

4. Appearance: Solid

5. Melting Point: 1256 degree centigrade

6. Density: 2.39 g/cm3

7. Solubility: Insoluble in water

Lithium Orthosilicate Applications:


1. Ceramics: Lithium orthosilicate is commonly used as a raw material in ceramic manufacturing. It contributes to the formation of ceramic materials with desirable properties such as thermal stability, chemical resistance, and mechanical strength. These ceramics find applications in industries ranging from electronics to aerospace.

2. Nuclear Materials: Lithium orthosilicate is being investigated for use in certain types of nuclear reactors. Its ability to withstand high temperatures and neutron irradiation makes it suitable for use in nuclear materials, including as a neutron absorber or structural material in reactor cores.

3. Solid-State Lithium-Ion Batteries: With the increasing demand for safer and more energy-dense batteries, solid-state lithium-ion batteries have gained attention. Lithium orthosilicate has been researched for its potential application as a solid electrolyte in these batteries. Its ionic conductivity and stability make it a promising candidate for improving the performance and safety of lithium-ion batteries.

4. Glass Manufacturing: In glass production, lithium orthosilicate serves as a flux, which helps to lower the melting point of the glass batch. This facilitates the manufacturing process and can lead to the production of glass with specific properties such as increased clarity or thermal shock resistance.

5. Dielectric Materials: The dielectric properties of lithium orthosilicate make it suitable for use in electronic components such as capacitors, resonators, and insulators. Its stability at high temperatures and in harsh environments make it valuable in applications where reliable electrical performance is crucial.

6. Thermal Barrier Coatings: Lithium orthosilicate is utilized in thermal barrier coatings (TBCs) due to its high-temperature stability and low thermal conductivity. These coatings are applied to components in gas turbines, aerospace engines, and other high-temperature applications to protect against heat transfer and thermal stress.

7. Advanced Materials Research: In addition to its practical applications, lithium orthosilicate is studied in research laboratories for fundamental understanding of its properties and potential applications in emerging technologies. This includes investigations into its crystal structure, phase transitions, and interactions with other materials.

Lithium Orthosilicate FAQ:


Q: How is Lithium Orthosilicate used in ceramic manufacturing?


A: Lithium Orthosilicate is used as a raw material in ceramic manufacturing to impart desirable properties such as thermal stability, chemical resistance, and mechanical strength to ceramic products.

Q: What role does Lithium Orthosilicate play in nuclear materials?


A: Lithium Orthosilicate is being investigated for use in certain types of nuclear reactors due to its ability to withstand high temperatures and neutron irradiation. It can serve as a neutron absorber or structural material in reactor cores.

Q: Is Lithium Orthosilicate suitable for use in solid-state lithium-ion batteries?


A: Yes, Lithium Orthosilicate has been researched for its potential application as a solid electrolyte in solid-state lithium-ion batteries. Its ionic conductivity and stability make it a promising candidate for improving battery performance and safety.

Q: How does Lithium Orthosilicate contribute to glass manufacturing?


A: In glass production, Lithium Orthosilicate acts as a flux, which lowers the melting point of the glass batch. This facilitates the manufacturing process and can lead to the production of glass with specific properties such as increased clarity or thermal shock resistance.

Q: What are the research areas related to Lithium Orthosilicate?


A: Research on Lithium Orthosilicate includes investigations into its crystal structure, phase transitions, interactions with other materials, and potential applications in emerging technologies.

Q: Is Lithium Orthosilicate commonly used in electronic components?


A: Yes, Lithium Orthosilicate is used in electronic components such as capacitors, resonators, and insulators due to its dielectric properties and stability at high temperatures.
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